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ATG10 protein (Candida glabrata) - STRING interaction network
"ATG10" - Hypothetical protein in Candida glabrata
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ATG10Hypothetical protein; E2-like enzyme required for the cytoplasm to vacuole transport (Cvt), autophagy and nucleophagy. Acts as an E2-like enzyme that catalyzes the conjugation of ATG12 to ATG5. ATG12 conjugation to ATG5 is required for proper localization of ATG8 to the preautophagosomal structure (PAS). Likely serves as an ATG5- recognition molecule (By similarity) (159 aa)    
Predicted Functional Partners:
ATG7
Hypothetical protein; E1-like activating enzyme involved in the 2 ubiquitin- like systems required for cytoplasm to vacuole transport (Cvt) and autophagy. Activates ATG12 for its conjugation with ATG5 and ATG8 for its conjugation with phosphatidylethanolamine. Both systems are needed for the ATG8 association to Cvt vesicles and autophagosomes membranes. Autophagy is essential for maintenance of amino acid levels and protein synthesis under nitrogen starvation. Required for selective autophagic degradation of the nucleus (nucleophagy) as well as for mitophagy which contributes to regula [...] (623 aa)
       
  0.989
ATG5
Hypothetical protein; Involved in cytoplasm to vacuole transport (Cvt) and autophagic vesicle formation. Autophagy is essential for maintenance of amino acid levels and protein synthesis under nitrogen starvation. Required for selective autophagic degradation of the nucleus (nucleophagy). Also required for mitophagy, which eliminates defective or superfluous mitochondria in order to fulfill cellular energy requirements and prevent excess ROS production. Conjugation with ATG12, through a ubiquitin-like conjugating system involving ATG7 as an E1-like activating enzyme and ATG10 as an E2- [...] (270 aa)
         
  0.895
ATG12
Hypothetical protein; Ubiquitin-like protein involved in cytoplasm to vacuole transport (Cvt), autophagy vesicles formation, mitophagy, and nucleophagy. Conjugation with ATG5 through a ubiquitin-like conjugating system involving also ATG7 as an E1-like activating enzyme and ATG10 as an E2-like conjugating enzyme, is essential for its function. The ATG12-ATG5 conjugate functions as an E3-like enzyme which is required for lipidation of ATG8 and ATG8 association to the vesicle membranes (By similarity) (181 aa)
       
 
  0.704
ATG3
Hypothetical protein; E2 conjugating enzyme required for the cytoplasm to vacuole transport (Cvt) and autophagy. Required for selective autophagic degradation of the nucleus (nucleophagy) as well as for mitophagy which contributes to regulate mitochondrial quantity and quality by eliminating the mitochondria to a basal level to fulfill cellular energy requirements and preventing excess ROS production. Responsible for the E2-like covalent binding of phosphatidylethanolamine to the C-terminal Gly of ATG8. The ATG12- ATG5 conjugate plays a role of an E3 and promotes the transfer of ATG8 f [...] (309 aa)
       
 
  0.683
ATG4
Hypothetical protein; Cysteine protease required for the cytoplasm to vacuole transport (Cvt) and autophagy. Required for selective autophagic degradation of the nucleus (nucleophagy) as well as for mitophagy which contributes to regulate mitochondrial quantity and quality by eliminating the mitochondria to a basal level to fulfill cellular energy requirements and preventing excess ROS production. Cleaves the C-terminal amino acid of ATG8 to reveal a C-terminal glycine. ATG8 ubiquitin-like activity requires the exposure of the glycine at the C-terminus for its conjugation to phosphatid [...] (483 aa)
       
 
  0.663
ATG16
Hypothetical protein; Stabilizes the ATG5-ATG12 conjugate which is necessary for autophagy. The ATG5-ATG12/ATG16 complex is required for efficient promotion of ATG8-conjugation to phosphatidylethanolamine and ATG8 localization to the pre- autophagosomal structure (PAS). Recruites also ATG3 to the PAS. Involved in endoplasmic reticulum-specific autophagic process and is essential for the survival of cells subjected to severe ER stress (By similarity) (108 aa)
       
 
  0.659
ATG9
Hypothetical protein; Involved in autophagy and cytoplasm to vacuole transport (Cvt) vesicle formation. Plays a key role in the organization of the preautophagosomal structure/phagophore assembly site (PAS), the nucleating site for formation of the sequestering vesicle. Required for mitophagy. Cycles between the PAS and the cytoplasmic vesicle pool and may participate in supplying membrane for the growing autophagosome. Also involved in endoplasmic reticulum- specific autophagic process and is essential for the survival of cells subjected to severe ER stress. Different machineries are [...] (928 aa)
       
 
  0.627
VPS30
Hypothetical protein (512 aa)
       
 
  0.621
ATG14
Hypothetical protein; Required for cytoplasm to vacuole transport (Cvt) and autophagy as a part of the autophagy-specific VPS34 PI3-kinase complex I. This complex is essential to recruit the ATG8- phosphatidylinositol conjugate and the ATG12-ATG5 conjugate to the pre-autophagosomal structure. ATG14 mediates the specific binding of the VPS34 PI3-kinase complex I to the preautophagosomal structure (PAS) (By similarity) (364 aa)
       
 
  0.614
ATG1
Hypothetical protein; Serine/threonine protein kinase involved in the cytoplasm to vacuole transport (Cvt) and found to be essential in autophagy, where it is required for the formation of autophagosomes. Involved in the clearance of protein aggregates which cannot be efficiently cleared by the proteasome. Required for selective autophagic degradation of the nucleus (nucleophagy) as well as for mitophagy which contributes to regulate mitochondrial quantity and quality by eliminating the mitochondria to a basal level to fulfill cellular energy requirements and preventing excess ROS prod [...] (942 aa)
       
 
  0.609
Your Current Organism:
Candida glabrata
NCBI taxonomy Id: 284593
Other names: C. glabrata, C. glabrata CBS 138, Candida glabrata, Candida glabrata ATCC 2001, Candida glabrata ATCC2001, Candida glabrata CBS 138, Candida glabrata CBS138, Nakaseomyces, Torulopsis glabrata, m. Nakaseomyces, mitosporic Nakaseomyces
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